[1]Osna NA, Donohue TJ, Kharbanda K K. Alcoholic liver disease: pathogenesis and current management. Alcohol Res, 2017, 38(2): 147-161. [2]Stickel F, Datz C, Hampe J, et al. Pathophysiology and management of alcoholic liver disease: update 2016. Gut Liver, 2017, 11(2): 173-188. [3]Dubinkina VB, Tyakht AV, Odintsova V Y, et al. Links of gut microbiota composition with alcohol dependence syndrome and alcoholic liver disease. Microbiome, 2017, 5(1): 141. [4]Liu JP, Zou WL, Chen SJ, et al. Effects of different diets on intestinal microbiota and nonalcoholic fatty liver disease development. World J Gastroenterol, 2016, 22(32): 7353-7364. [5]中华医学会肝病学分会脂肪肝和酒精性肝病学组. 酒精性肝病防治指南(2018年更新版). 实用肝脏病杂志, 2018, 21(2): 170-176. [6]Louvet A, Mathurin P. Alcoholic liver disease: mechanisms of injury and targeted treatment. Nat Rev Gastroenterol Hepatol, 2015, 12(4): 231-242. [7]Bataller R, Gao B. Liver fibrosis in alcoholic liver disease. Semin Liver Dis, 2015, 35(2): 146-156. [8]Gallegos-Orozco JF, Charlton MR. Alcoholic liver disease and liver transplantation. Clin Liver Dis, 2016, 20(3): 521-534. [9]Hartmann P, Seebauer CT, Schnabl B. Alcoholic liver disease: the gut microbiome and liver cross talk. Alcohol Clin Exp Res, 2015, 39(5): 763-775. [10]Boccuto L, Abenavoli L. Genetic and epigenetic profile of patients with alcoholic liver disease. Ann Hepatol, 2017, 16(4): 490-500. [11]Carpino G, Pastori D, Baratta F, et al. Pnpla3 variant and portal/periportal histological pattern in patients with biopsy-proven non-alcoholic fatty liver disease: a possible role for oxidative stress. Sci Rep, 2017, 7(1): 15756. [12]Kong L, Lu Y, Zhang S, et al. Role of nutrition, gene polymorphism, and gut microbiota in non-alcoholic fatty liver disease. Discov Med, 2017, 24(131): 95-106. [13]臧月, 王生, 刘楠, 等. 肠道菌群失调介导酒精性肝病发生发展的机制研究进展. 中国药理学通报, 2016, 32(4): 451-455. [14]Sun Q, Zhang W, Zhong W, et al. Dietary fisetin supplementation protects against alcohol-induced liver injury in mice. Alcohol Clin Exp Res, 2016, 40(10): 2076-2084. [15]Das S, Maras JS, Hussain MS, et al. Hyperoxidized albumin modulates neutrophils to induce oxidative stress and inflammation in severe alcoholic hepatitis. Hepatology, 2017, 65(2): 631-646. [16]延喜胜, 李伟, 王剑. 酒精性肝病患者血清细胞因子水平和肠道菌群分布变化研究. 实用肝脏病杂志, 2019, 22(4): 518-521. [17]Schneider KM, Bieghs V, Heymann F, et al. Cx3cr1 is a gatekeeper for intestinal barrier integrity in mice: limiting steatohepatitis by maintaining intestinal homeostasis. Hepatology, 2015, 62(5): 1405-1416. [18]Zhou D, Pan Q, Xin FZ, et al. Sodium butyrate attenuates high-fat diet-induced steatohepatitis in mice by improving gut microbiota and gastrointestinal barrier. World J Gastroenterol, 2017, 23(1): 60-75. [19]Teschke R. Alcoholic liver disease: Alcohol metabolism, cascade of molecular mechanisms, cellular targets, and clinical aspects. Biomedicines, 2018,6(4):106. [20]Iracheta-Vellve A, Calenda CD, Petrasek J, et al. FXR and TGR5 agonists ameliorate liver injury, steatosis, and inflammation after binge or prolonged alcohol feeding in mice.Hepatol Commun, 2018,2(11):1379-1391. [21]Torrealba J, Sweed NT, Burguete D, et al. Bile cast nephropathy: A pathologic finding with manifold causes displayed in an adult with alcoholic steatohepatitis and in a child with Wilson's disease. Case Rep Nephrol Dial, 2018,8(3):207-215. [22]刘露露, 王炳元. 肠道微生态与酒精性肝病. 实用肝脏病杂志, 2017, 20(6): 660-662. [23]US Preventive Services Task Force, Curry SJ, Krist AH, et al. Screening and behavioral counseling interventions to reduce unhealthy alcohol use in adolescents and adults: US preventive services task force recommendation statement. JAMA, 2018, 320(18):1899-1909. [24]Chen M, Hui S, Lang H, et al. Sirt3 deficiency promotes high-fat diet-induced nonalcoholic fatty liver disease in correlation with impaired intestinal permeability through gut microbial dysbiosis. Mol Nutr Food Res, 2019, 63(4): e1800612. [25]DeGroat AR, Fleming CK, Dunlay SM, et al. The sex specific effect of alcohol consumption on circulating levels of CTRP3. PLoS One,2018,13(11):e0207011. |